Disinfection device for reproductive medicine examination room
By using disinfectant gas in the disinfection device in the reproductive medicine examination room, combined with flowing gas heating and a rotating shaking mechanism, the problem of disinfection dead spots is solved, a more comprehensive disinfection effect is achieved, and the risk of instrument infection is reduced.
Patent Information
- Application Number
- CN202511477030.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-16
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2045-10-16
AI Technical Summary
Existing disinfection devices in reproductive medicine examination rooms have blind spots when the instruments are stationary, resulting in incomplete disinfection and a risk of infection.
Disinfection is performed using disinfectant gas, which is heated by a flowing gas heating mechanism to improve the disinfection effect. Combined with a rotary reciprocating shaking mechanism, the instrument vibrates to expand the disinfection range.
This improved the comprehensiveness and thoroughness of disinfection, reducing the risk of infection during subsequent use of the instrument.
Smart Images

Figure CN120960467A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of medical devices, in particular to a disinfection device for a reproductive medical examination room. BACKGROUND
[0002] Reproductive medicine mainly focuses on the treatment of male and female reproductive medical clinics, reproductive physiological regulation and reproductive diseases. The reproductive system is a relatively sensitive and fragile system. Ensuring effective disinfection of the reproductive system is an important link in the treatment of reproductive medicine. However, it is not easy to adjust the disinfection position inside the examination room according to the needs, and it is not suitable to store unused instruments, so that the instruments are easily contaminated when not in use.
[0003] Therefore, the Chinese patent with publication number "CN115607708A" discloses "a disinfection device for a reproductive medical examination room", which mainly includes a mobile base, the mobile base has a mobile wheel, and a disinfection box is arranged on the top of the mobile base, the middle part of the outer wall of the mobile base is fixedly connected with a support plate, and the top of the front of the disinfection box is rotatably connected with a turnover cover; the installation cylinder has a communication cylinder body, and a sprayer is arranged on the front of the installation cylinder, the back surface of the sprayer extends to the inside of the installation cylinder, and the middle part of the outer wall of the disinfection box is fixedly connected with a partition plate. The disinfection device for the reproductive medical examination room avoids the problem of flow interruption of the disinfectant during work, and uses the disinfection device to disinfect the instruments stored in the storage device, ensuring that the instruments are not easily contaminated during use, further improving the cleanliness of the instruments during storage, and enabling the storage device to maintain balance on the storage frame.
[0004] Obviously, the above-mentioned disinfection device for the reproductive medical examination room is disinfected in the state of instrument placement and static, and the contact between the two will undoubtedly cause the instrument to be unable to be disinfected on the contact surface when the instrument is placed on the platform surface, thus there is a defect of disinfection dead angle, which undoubtedly causes the disinfected instrument to still have the risk of infection. SUMMARY
[0005] In view of the deficiencies of the prior art, the present application provides a disinfection device for a reproductive medical examination room, which uses disinfectant gas to effectively disinfect the instruments, and the disinfectant gas is a gas with rapid movement and penetration function. In addition, the device can make the instruments vibrate during disinfection, and the vibration can make the instruments move and the disinfectant gas flow along the entire surface of the instruments to improve the disinfection range of the instruments and reduce the risk of infection during subsequent use, thereby solving the above-mentioned technical problems.
[0006] In order to achieve the above object, the present application provides the following technical scheme: a disinfection device for reproductive medical examination room, comprising a vertical disinfection cylinder body with supporting legs mounted at the bottom, a top cover detachably mounted at the top opening end of the vertical disinfection cylinder body, a No. 1 butt flange provided at the bottom end of the vertical disinfection cylinder body and communicating with the internal structure of the vertical disinfection cylinder body, and a disinfection gas discharge channel provided at the center of the top cover, further comprising a flowing gas heating mechanism, which is internally provided with a No. 1 hollow pipe body mounted at the bottom of the vertical disinfection cylinder body and having a hollow state inside, a metal rod placed at the center of the No. 1 hollow pipe body and generating eddy current inside after being subjected to an alternating magnetic field, and an induction coil generating an alternating magnetic field after passing through an alternating current; and a rotary reciprocating shaking mechanism, which is internally provided with a lower movable disc located inside the vertical disinfection cylinder body and capable of rotating, an upper movable disc located directly above the lower movable disc and capable of generating a longitudinal reciprocating motion effect, and a movable object plate moving longitudinally with the upper movable disc and capable of supporting the instruments.
[0007] Preferably, the flowing gas heating mechanism comprises a No. 1 gas flowing cavity provided at the center of the No. 1 hollow pipe body and having an open state at both ends, the No. 1 hollow pipe body is provided with a closed annular component mounting cavity at the periphery of the No. 1 gas flowing cavity, the bottom end and the top end of the No. 1 hollow pipe body are respectively provided with a No. 2 butt flange and a No. 3 butt flange of integral structure, the No. 1 hollow pipe body is provided with an induction coil inside the annular component mounting cavity, both ends of the induction coil are respectively butt jointed with a fixed wire column, the No. 1 hollow pipe body is placed with a metal rod at the center of the No. 1 gas flowing cavity, the bottom end and the top end of the metal rod are respectively provided with a No. 4 butt flange and a No. 5 butt flange of integral structure, and the bottom end of the No. 3 butt flange is fixedly connected with the No. 1 butt flange.
[0008] Preferably, during operation, the wire column is butt jointed with the power switch of an alternating current power supply through a wire.
[0009] Preferably, the metal rod is made of copper alloy material, and the circumferential surface thereof is provided with a spiral blade structure capable of making the surrounding gas flow upward during rotation.
[0010] Preferably, the rotating reciprocating shaking mechanism comprises a rotating shaft located at the center of the first flange and a hollow upper limiting support fixedly installed inside the vertical sterilization cylinder, the shaft body of the rotating shaft is installed inside the first flange through a bearing and a hollow lower limiting support, the bottom end of the rotating shaft is provided with a sixth flange in an integral structure, the top of the rotating shaft is provided with a conical air guide structure for guiding gas obliquely upward, the top end of the conical air guide structure is provided with a lower movable disc in an integral structure, the upper surface of the lower movable disc is embedded with three lower fan-shaped permanent magnets arranged in a ring array, the lower surface of the upper movable disc is embedded with three upper fan-shaped permanent magnets arranged in a ring array, the upper surface of the upper fan-shaped permanent magnets is provided with a longitudinal movable rod in an integral structure, the center of the upper hollow limiting support is provided with a rod hole in which the longitudinal movable rod is sleeved, the outer periphery of the longitudinal movable rod between the upper hollow limiting support and the upper movable disc is sleeved with a compressed coil spring, the top end of the longitudinal movable rod is fixedly installed with a movable plate, and the inside of the movable plate is provided with a plurality of gas holes for longitudinal movement of gas.
[0011] Preferably, the lower fan-shaped permanent magnets and the upper fan-shaped permanent magnets are arranged longitudinally symmetrically, and the magnetic poles of the lower fan-shaped permanent magnets and the upper fan-shaped permanent magnets at opposite ends are opposite.
[0012] Preferably, the structure and shape of the cross section of the rod hole are consistent with the structure and shape of the cross section of the longitudinal movable rod, both being polygonal structures, and the structure size of the cross section of the rod hole matches the structure size of the cross section of the longitudinal movable rod.
[0013] Preferably, the rotating gas driving mechanism further comprises a second hollow pipe body fixedly installed at the bottom end of the second flange and capable of guiding sterilization gas, a fan blade installed inside the second hollow pipe body and capable of driving surrounding gas upward when rotating, and a second rotating shaft capable of driving the fan blade to rotate.
[0014] Preferably, the rotating gas driving mechanism comprises a No. 7 butt flange integrally arranged at the top end of the No. 2 hollow pipe body, the No. 7 butt flange is fixedly installed at the bottom end of the No. 2 butt flange, the inside of the No. 2 hollow pipe body is provided with a No. 2 gas flow cavity communicating with a No. 1 gas flow cavity at the top end, the bottom end of the No. 2 gas flow cavity is provided with a gas reservation cavity, the bottom end of the No. 2 hollow pipe body is provided with a shaft mounting hole communicating with the space below and the bottom end of the gas reservation cavity, the outer circumferential surface of the No. 2 hollow pipe body is provided with a gas injection channel communicating with the space outside and the circumferential side surface of the gas reservation cavity, a rotatable No. 2 rotating shaft is mounted in the inside of the shaft mounting hole of the No. 2 hollow pipe body through a bearing and a sealing ring, the bottom end of the No. 2 rotating shaft is fixedly installed with a driven pulley, the top end of the No. 2 rotating shaft is provided with a No. 8 butt flange integrally arranged with the No. 2 rotating shaft and fixedly installed at the bottom end of a No. 4 butt flange, and a plurality of fan blades are fixedly installed on the shaft body in the inside of the No. 2 gas flow cavity.
[0015] Preferably, during operation, the driven pulley is linked with a driving motor through a belt, and the fan blades generate downward gas flow direction when rotating.
[0016] Compared with the prior art, the present application provides a disinfection device for a reproductive medical examination room, which has the following advantages: The instrument is effectively disinfected by the disinfectant gas, and the disinfectant gas has the functions of rapid movement and penetration. In addition, the device can cause the instrument to vibrate during disinfection. The vibration can cause the instrument to move, and the disinfectant gas can flow along the entire surface of the instrument to improve the disinfection range of the instrument and reduce the risk of infection during subsequent use of the instrument. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 It is a perspective view of the present application; Figure 2 It is a perspective view of the present application; Figure 3 It is a perspective view of the flow gas heating mechanism in the present application; Figure 4 It is a perspective view of the flow gas heating mechanism in the present application; Figure 5 It is a perspective view of the rotating reciprocating vibration mechanism in the present application; Figure 6 It is a perspective view of the rotating reciprocating vibration mechanism in the present application; Figure 7 It is a perspective view of the rotating gas driving mechanism in the present application; Figure 8 isometric view of the rotating gas driving mechanism in the present application.
[0018] 1, vertical disinfection cylinder; 2, top cover; 3, No. 1 butt flange; 4, disinfection gas discharge channel; 5, flowing gas heating mechanism; 51, No. 1 hollow pipe body; 52, No. 2 butt flange; 53, No. 3 butt flange; 54, No. 1 gas flowing cavity; 55, annular component installation cavity; 56, induction coil; 57, terminal post; 58, metal rod; 59, No. 4 butt flange; 510, No. 5 butt flange; 6, rotating reciprocating shaking mechanism; 61, No. 1 rotating shaft; 62, No. 6 butt flange; 63, lower hollow limiting support; 64, lower movable disc; 65, lower fan-shaped permanent magnet; 66, upper movable disc; 67, upper fan-shaped permanent magnet; 68, longitudinal movable rod; 69, upper hollow limiting support; 610, rod body perforation; 611, spiral spring; 612, movable object placing plate; 613, air vent; 614, conical air guide structure; 7, rotating gas driving mechanism; 71, No. 2 hollow pipe body; 72, No. 7 butt flange; 73, No. 2 gas flowing cavity; 74, gas reservation cavity; 75, shaft body installation hole; 76, gas injection channel; 77, No. 2 rotating shaft; 78, driven pulley; 79, fan blade; 710, No. 8 butt flange. DETAILED DESCRIPTION
[0019] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the protection scope of the present application.
[0020] Please refer to Figure 1 and Figure 2 , a disinfection device for reproductive medical examination room, comprising a vertical disinfection cylinder 1 with legs installed at the bottom, a top cover 2 detachably installed at the top opening end of the vertical disinfection cylinder 1, a No. 1 butt flange 3 arranged at the bottom end of the vertical disinfection cylinder 1 and connected to the internal structure of the vertical disinfection cylinder 1, and a disinfection gas discharge channel 4 arranged at the center of the top cover 2, the gas injection channel 76 is connected to a pipeline for discharging disinfection gas, then the terminal post 57 is connected to a power switch of an alternating current power supply through a wire, and then the driven pulley 78 is connected to a driving motor with a driving pulley installed at the end of a rotor through a belt, the instruments to be disinfected are placed on the upper surface of the movable object placing plate 612, then the top cover 2 is closed, and finally the disinfection gas discharge channel 4 is connected to a pipeline for collecting waste gas.
[0021] In order to realize the heating function of the sterilization gas, so that the sterilization gas has a double sterilization effect on the instrument in the form of high temperature, please refer to Figure 1 , Figure 2 , Figure 3 and Figure 4 , a flowing gas heating mechanism 5 is needed, which is internally provided with a No. 1 hollow pipe body 51 installed at the bottom of the vertical sterilization cylinder 1 and internally hollow, a metal rod 58 placed in the center of the No. 1 hollow pipe body 51 and internally generating eddy current after being subjected to alternating magnetic field, and an induction coil 56 generating alternating magnetic field after passing alternating current. Start the alternating power supply, at this time, the alternating current will enter the induction coil 56, the induction coil 56 will generate alternating magnetic field, and the metal rod 58 will generate eddy current phenomenon under the action of alternating magnetic field, thereby being heated. When the flowing humid gas contacts the metal rod 58, it will be quickly heated by the metal rod 58, so that the sterilization gas generates high temperature phenomenon. The high-temperature sterilization gas can sterilize the instrument in the physical high temperature and chemical double directions. The sterilized gas is discharged outward through the sterilization gas discharge channel 4.
[0022] For the specific structure of the flowing gas heating mechanism 5, please refer to Figure 3 and Figure 4 , including a No. 1 gas flow cavity 54 provided at the center of the No. 1 hollow pipe body 51 and open at both ends. The No. 1 hollow pipe body 51 is provided with a closed annular component mounting cavity 55 at the periphery of the No. 1 gas flow cavity 54. The bottom end and the top end of the No. 1 hollow pipe body 51 are respectively provided with a No. 2 butt flange 52 and a No. 3 butt flange 53 of integral structure. The induction coil 56 is placed inside the annular component mounting cavity 55 of the No. 1 hollow pipe body 51. Both ends of the induction coil 56 are respectively butt jointed with a fixed terminal post 57. The No. 1 hollow pipe body 51 is placed with a metal rod 58 at the center of the No. 1 gas flow cavity 54. The bottom end and the top end of the metal rod 58 are respectively provided with a No. 4 butt flange 59 and a No. 5 butt flange 510 of integral structure. The No. 3 butt flange 53 and the No. 1 butt flange 3 are fixedly connected at the bottom. When working, the terminal post 57 is butt jointed with the power switch of an alternating current power supply through wires. The metal rod 58 is made of copper alloy material, and the circumferential surface is provided with a spiral blade structure which can make the surrounding gas flow upward when rotating.
[0023] In order to realize the placement and reciprocating shaking of the instrument, please refer to Figure 1 , Figure 2 , Figure 5 and Figure 6, need to set rotating reciprocating shaking mechanism 6, which is located inside the vertical disinfection cylinder 1 and can rotate the lower activity disc 64, located directly above the lower activity disc 64 and can produce longitudinal reciprocating effect of the upper activity disc 66 and with the upper activity disc 66 longitudinal movement and can support the effect of the instrument on the movable activity plate 612, metal rod 58 will drive the first rotating shaft 61 rotation, the first rotating shaft 61 will drive the lower activity disc 64 rotation, at the same time, three lower fan-shaped permanent magnet 65 will rotate, and the lower fan-shaped permanent magnet 65 will occur in the process of rotation with the upper fan-shaped permanent magnet 67 gap type and dislocation phenomenon, because the same sex repels the opposite sex, the upper activity disc 66 will occur in the interval type upward movement phenomenon, and under the cooperation of the spiral spring 611, the upper activity disc 66 will drive the movable activity plate 612 to produce up and down shaking phenomenon, and the instrument will be shaken, shaking will make the instrument from the upper surface of the movable activity plate 612, so as to improve the scope of the instrument disinfection.
[0024] Regarding the specific structure of the rotating reciprocating shaking mechanism 6, please refer to Figure 5 and Figure 6, including a first rotating shaft 61 located at the center of the first flange plate 3 and a hollow limiting support 69 fixedly installed inside the vertical sterilization cylinder 1, the shaft body of the first rotating shaft 61 is installed inside the first flange plate 3 through a bearing and a lower hollow limiting support 63, the bottom end of the first rotating shaft 61 is provided with a sixth flange plate 62 in an integral structure, the top of the first rotating shaft 61 is provided with a conical air guide structure 614 for guiding gas obliquely upward, the top end of the conical air guide structure 614 is provided with a lower movable disc 64 in an integral structure, the upper surface of the lower movable disc 64 is embedded with three lower fan-shaped permanent magnets 65 arranged in a ring array, the lower surface of the upper movable disc 66 is embedded with three upper fan-shaped permanent magnets 67 arranged in a ring array, the upper surface center of the upper fan-shaped permanent magnet 67 is provided with a longitudinal movable rod 68 in an integral structure, the center of the upper hollow limiting support 69 is provided with a rod body hole 610 sleeved on the rod body of the longitudinal movable rod 68, the outer periphery of the longitudinal movable rod 68 between the upper hollow limiting support 69 and the upper movable disc 66 is sleeved with a spiral spring 611 in a compressed state, the top end of the longitudinal movable rod 68 is fixedly installed with a movable plate 612, the inside of the movable plate 612 is provided with a plurality of air holes 613 for longitudinal movement of gas, the lower fan-shaped permanent magnets 65 and the upper fan-shaped permanent magnets 67 are arranged longitudinally symmetrically, and the magnetic poles of the lower fan-shaped permanent magnets 65 and the upper fan-shaped permanent magnets 67 at opposite ends are opposite, the cross-sectional structure of the rod body hole 610 is consistent with the cross-sectional structure of the longitudinal movable rod 68, both are polygonal structures, and the cross-sectional structure size of the rod body hole 610 matches the cross-sectional structure size of the longitudinal movable rod 68.
[0025] In order to realize the directional driving function of the sterilization gas, please refer to Figure 1 、 Figure 2 、 Figure 7 and Figure 8 , a rotating gas driving mechanism 7 is needed, which is internally provided with a second hollow pipe body 71 fixedly installed at the bottom end of the second flange plate 52 and capable of generating a flow of sterilization gas inside, a fan blade 79 placed inside the second hollow pipe body 71 and capable of generating an upward driving effect on the surrounding gas when rotating, and a second rotating shaft 77 capable of driving the fan blade 79 to rotate, starting the driving motor, the driven pulley 78 will drive the second hollow pipe body 71 to rotate, and the second hollow pipe body 71 will drive the plurality of fan blades 79 to rotate quickly, the rotation of the fan blades 79 will make the sterilization gas around it move upward, thereby realizing the directional driving function of the sterilization gas.
[0026] For the specific structure of the rotating gas driving mechanism 7, please refer to Figure 7 and Figure 8, including a seven number of butt flange 72 set in the top of the second hollow pipe body 71, the seven number of butt flange 72 is fixedly installed in the bottom of the second number of butt flange 52, the inside of the second hollow pipe body 71 is provided with the top of the first gas flow cavity 54 communication two gas flow cavity 73, the bottom of the two gas flow cavity 73 is provided with gas reservation cavity 74, the bottom of the second hollow pipe body 71 is provided with the shaft body mounting hole 75 which is communicated with the space below and the bottom of the gas reservation cavity 74, the outer circumferential surface of the second hollow pipe body 71 is provided with the gas injection channel 76 which is communicated with the space outside and the circumferential side of the gas reservation cavity 74, the inside of the shaft body mounting hole 75 of the second hollow pipe body 71 is installed a rotatable second rotating shaft 77 through the bearing and the sealing ring, the bottom of the second rotating shaft 77 is fixedly installed with driven pulley 78, the top of the second rotating shaft 77 is provided with eight number of butt flange 710 which is integral structure and fixedly installed in the bottom of the four number of butt flange 59, the shaft body in the inside of the second gas flow cavity 73 of the second rotating shaft 77 is fixedly installed with a plurality of fan blades 79, when working, the driven pulley 78 is linked with a rotor end through the belt and a driving motor which is installed with driving pulley, and the fan blades 79 generate downward gas flow direction when rotating.
[0027] In use, the gas injection channel 76 is connected to a pipe for discharging sterilization gas, the terminal post 57 is connected to the power switch of an alternating current power supply through a wire, the driven pulley 78 is connected to a driving motor with a driving pulley installed on the end of the rotor through a belt, the instrument to be sterilized is placed on the upper surface of the movable plate 612, the top cover 2 is closed, the sterilization gas discharge channel 4 is connected to a pipe for collecting waste gas, the driving motor is started, the driven pulley 78 drives the second hollow pipe body 71 to rotate, the second hollow pipe body 71 drives the plurality of fan blades 79 to rotate rapidly, the rotation of the fan blades 79 causes the sterilization gas around them to move upward, the alternating current power supply is started, the alternating current enters the induction coil 56, the induction coil 56 generates an alternating magnetic field, the metal rod 58 generates eddy current under the action of the alternating magnetic field and is heated, when the flowing humid gas contacts the metal rod 58, it is rapidly heated by the metal rod 58, so that the sterilization gas is heated, at the same time, the metal rod 58 drives the first rotating shaft 61 to rotate, the first rotating shaft 61 drives the lower movable disc 64 to rotate, at the same time, the three lower fan-shaped permanent magnets 65 rotate, the lower fan-shaped permanent magnets 65 symmetrically and dislocatedly occur in the gap with the upper fan-shaped permanent magnets 67 in the rotating process, because the same sex repels and the different sex attracts, the upper movable disc 66 occurs upward movement in the gap, under the cooperation of the helical spring 611, the upper movable disc 66 drives the movable plate 612 to produce up and down shaking, and the instrument shakes, the high-temperature sterilization gas can sterilize the instrument in the physical and chemical directions, and the sterilized gas is discharged outward through the sterilization gas discharge channel 4.
[0028] Although the embodiments of the present application have been shown and described, it is to be understood that various changes, modifications, substitutions and alterations can be made to the embodiments without departing from the principles and spirit of the present application, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A disinfection device for a reproductive medicine examination room, comprising a vertical disinfection cylinder (1) with legs installed at the bottom, a top cover (2) detachably installed at the top opening of the vertical disinfection cylinder (1), a first docking flange (3) disposed at the bottom of the vertical disinfection cylinder (1) and communicating with the internal structure of the vertical disinfection cylinder (1), and a disinfection gas emission channel (4) disposed at the center of the top cover (2), characterized in that: It also includes, The flowing gas heating mechanism (5) is equipped with a first hollow pipe body (51) installed at the bottom of the vertical disinfection cylinder (1) and hollow inside, a metal rod (58) placed at the center of the first hollow pipe body (51) and generating eddy currents inside after being subjected to an alternating magnetic field, and an induction coil (56) generating an alternating magnetic field after being supplied with an alternating current. And a rotary reciprocating shaking mechanism (6), which is provided with a lower movable plate (64) located inside the vertical disinfection cylinder (1) and capable of rotation, an upper movable plate (66) located directly above the lower movable plate (64) and capable of producing longitudinal reciprocating motion, and a placement movable plate (612) that moves longitudinally with the upper movable plate (66) and can support the instrument.
2. The disinfection device for a reproductive medicine examination room according to claim 1, characterized in that: The flowing gas heating mechanism (5) includes a first gas flow chamber (54) located at the center of a first hollow pipe body (51) and open at both ends. The first hollow pipe body (51) has a closed annular component mounting cavity (55) located around the first gas flow chamber (54). The bottom and top ends of the first hollow pipe body (51) are respectively provided with an integral second docking flange (52) and a third docking flange (53). The first hollow pipe body (51) has a closed annular component mounting cavity (55) located around the annular component mounting cavity (54). An induction coil (56) is placed inside the cavity (55). The two ends of the induction coil (56) are respectively connected to a fixed terminal (57). A metal rod (58) is placed in the center of the first gas flow cavity (54) of the first hollow pipe body (51). The bottom and top of the metal rod (58) are respectively provided with the fourth docking flange (59) and the fifth docking flange (510) which are integral with it. The bottom ends of the third docking flange (53) and the first docking flange (3) are fixedly connected.
3. A disinfection device for a reproductive medicine examination room according to claim 2, characterized in that: During operation, the terminal (57) is connected to an AC power switch via a wire.
4. A disinfection device for a reproductive medicine examination room according to claim 3, characterized in that: The metal rod (58) is made of copper alloy and has a spiral blade structure on its circumference that allows the surrounding gas to flow upward when it rotates.
5. A disinfection device for a reproductive medicine examination room according to claim 4, characterized in that: The rotary reciprocating shaking mechanism (6) includes a first rotating shaft (61) located at the center of the first docking flange (3) and an upper hollow limiting bracket (69) fixedly installed inside the vertical disinfection cylinder (1). The shaft of the first rotating shaft (61) is installed inside the first docking flange (3) through bearings and the lower hollow limiting bracket (63). The bottom end of the first rotating shaft (61) is provided with a sixth docking flange (62) integrally formed with it. The top of the first rotating shaft (61) is provided with a conical air guide structure (614) that guides the gas obliquely upward. The top of the conical air guide structure (614) is provided with a lower movable plate (64) integrally formed with it. The upper surface of the lower movable plate (64) is embedded with three lower fans arranged in a ring array. The upper movable disk (66) has three upper fan-shaped permanent magnets (67) arranged in a ring array on its lower surface. The upper fan-shaped permanent magnet (67) has a longitudinal movable rod (68) with an integral structure at the center of its upper surface. The upper hollow limiting bracket (69) has a rod body through hole (610) at the center of the rod body of the longitudinal movable rod (68). The longitudinal movable rod (68) has a compressed helical spring (611) on the outer periphery of the rod body located between the upper hollow limiting bracket (69) and the upper movable disk (66). The top of the longitudinal movable rod (68) is fixedly installed with a placement movable plate (612). The interior of the placement movable plate (612) has multiple ventilation holes (613) for longitudinal gas movement.
6. A disinfection device for a reproductive medicine examination room according to claim 5, characterized in that: The lower sector permanent magnet (65) and the upper sector permanent magnet (67) are arranged symmetrically in the longitudinal direction, and the magnetic poles of the lower sector permanent magnet (65) and the upper sector permanent magnet (67) are opposite at their opposite ends.
7. A disinfection device for a reproductive medicine examination room according to claim 6, characterized in that: The cross-sectional shape of the rod through hole (610) is consistent with the cross-sectional shape of the longitudinal movable rod (68), both being polygonal structures, and the structural dimensions of the cross-sectional shape of the rod through hole (610) match the structural dimensions of the cross-sectional shape of the longitudinal movable rod (68).
8. A disinfection device for a reproductive medicine examination room according to any one of claims 2-7, characterized in that: It also includes a rotary gas drive mechanism (7), which has a second hollow pipe body (71) fixedly installed at the bottom of the second docking flange (52) and capable of guiding the disinfection gas inside, a fan blade (79) placed inside the second hollow pipe body (71) and capable of driving the surrounding gas upward when rotating, and a second rotating shaft (77) capable of driving the fan blade (79) to rotate.
9. A disinfection device for a reproductive medicine examination room according to claim 8, characterized in that: The rotary gas drive mechanism (7) includes a No. 7 docking flange (72) integrally disposed at the top of the No. 2 hollow pipe body (71). The No. 7 docking flange (72) is fixedly installed at the bottom end of the No. 2 docking flange (52). The No. 2 hollow pipe body (71) is provided with a No. 2 gas flow chamber (73) whose top end is connected to the No. 1 gas flow chamber (54). The bottom end of the No. 2 gas flow chamber (73) is provided with a gas reserved chamber (74). The bottom end of the No. 2 hollow pipe body (71) is provided with a shaft mounting hole (75) connecting the space below it and the bottom end of the gas reserved chamber (74). The outer circumference of the No. 2 hollow pipe body (71) The surface is provided with a gas injection channel (76) that connects the external space and the circumferential side of the gas reserved cavity (74). The second hollow pipe body (71) has a rotating second shaft (77) installed inside the shaft mounting hole (75) by bearings and sealing rings. The bottom end of the second rotating shaft (77) is fixedly installed with a driven pulley (78). The top end of the second rotating shaft (77) is provided with an eighth docking flange (710) that is integral with it and fixedly installed at the bottom end of the fourth docking flange (59). The second rotating shaft (77) has multiple fan blades (79) fixedly installed on the shaft inside the second gas flow cavity (73).
10. A disinfection device for a reproductive medicine examination room according to claim 9, characterized in that: During operation, the driven pulley (78) is linked to a drive motor with a drive pulley mounted on the end of a rotor via a belt, and the fan blade (79) generates a downward airflow direction when rotating.
Citation Information
Patent Citations
Disinfection device for reproductive medicine examination room
CN115607708A
Automatic propulsion type safety management device for pressurization isolation type medical nursing apparatus
CN118634039A
Abdominal cavity operation nursing frame based on operating room nursing
CN120458859A
Gear-driven rotational amplification type Anti-sloshing apparatus
WO2025200084A1
Cited By
Photovoltaic grid-connected control cabinet with multiple dehumidification functions
CN121238391A